Designer self-assembling peptide nanofiber hydrogel scaffolds have been considered as promising biomaterials for tissue engineering because of their excellent biocompatibility and biofunctionality. Our previous studies have shown that a novel designer functionalized self-assembling peptide nanofiber hydrogel scaffold (RLN/RADA16, LN-NS) containing N-terminal peptide sequence of link protein (link N) can promote nucleus pulposus cells (NPCs) adhesion and three-dimensional (3D) migration and stimulate biosynthesis of type II collagen and aggrecan by NPCs in vitro. The present study has extended these investigations to determine the effects of this functionalized LN-NS on bone marrow stem cells (BMSCs), a potential cell source for NP regenerat...
Self-supporting, shapeable hydrogels that consist of self-assembling synthetic peptides mimic the st...
Self-supporting, shapeable hydrogels that consist of self-assembling synthetic peptides mimic the st...
Self-supporting, shapeable hydrogels that consist of self-assembling synthetic peptides mimic the st...
Copyright © 2014 Baichuan Wang et al.This is an open access article distributed under the Creative C...
A class of self-assembling peptide nanofiber scaffolds has been shown to be an excellent biological ...
Biomedical researchers have become increasingly aware of the limitations of conventional 2-dimension...
Brain injury is almost irreparable due to the poor regenerative capability of neural tissue. Nowaday...
Tissue engineering and regenerative medicine are part of an emerging and interdisciplinary field tha...
There is a need to develop economical, efficient and widely available therapeutic approaches to enha...
There is a need to develop economical, efficient and widely available therapeutic approaches to enha...
Bone tissue regeneration is accomplished by concerted regulation of protein-based extracellular matr...
Self-assembled peptide nanofibers are versatile materials providing suitable platforms for regenerat...
There is a need to develop economical, efficient and widely available therapeutic approaches to enha...
Objective. The aim of the study was to evaluate the ability of PurmatrixTM to support the cell growt...
We here report the development of two peptide scaffolds designed for periodontal ligament fibroblast...
Self-supporting, shapeable hydrogels that consist of self-assembling synthetic peptides mimic the st...
Self-supporting, shapeable hydrogels that consist of self-assembling synthetic peptides mimic the st...
Self-supporting, shapeable hydrogels that consist of self-assembling synthetic peptides mimic the st...
Copyright © 2014 Baichuan Wang et al.This is an open access article distributed under the Creative C...
A class of self-assembling peptide nanofiber scaffolds has been shown to be an excellent biological ...
Biomedical researchers have become increasingly aware of the limitations of conventional 2-dimension...
Brain injury is almost irreparable due to the poor regenerative capability of neural tissue. Nowaday...
Tissue engineering and regenerative medicine are part of an emerging and interdisciplinary field tha...
There is a need to develop economical, efficient and widely available therapeutic approaches to enha...
There is a need to develop economical, efficient and widely available therapeutic approaches to enha...
Bone tissue regeneration is accomplished by concerted regulation of protein-based extracellular matr...
Self-assembled peptide nanofibers are versatile materials providing suitable platforms for regenerat...
There is a need to develop economical, efficient and widely available therapeutic approaches to enha...
Objective. The aim of the study was to evaluate the ability of PurmatrixTM to support the cell growt...
We here report the development of two peptide scaffolds designed for periodontal ligament fibroblast...
Self-supporting, shapeable hydrogels that consist of self-assembling synthetic peptides mimic the st...
Self-supporting, shapeable hydrogels that consist of self-assembling synthetic peptides mimic the st...
Self-supporting, shapeable hydrogels that consist of self-assembling synthetic peptides mimic the st...